The environmental dependence of the baryon acoustic peak in the Baryon Oscillation Spectroscopic Survey CMASS sample
arXiv:1810.01655 · doi:10.1093/mnras/sty2713
Abstract
The environmental dependence of galaxy clustering encodes information about the physical processes governing the growth of cosmic structure. We analyze the baryon acoustic peak as a function of environment in the galaxy correlation function of the Baryon Oscillation Spectroscopic Survey CMASS sample. Dividing the sample into three subsets by smoothed local overdensity, we detect acoustic peaks in the six separate auto-correlation and cross-correlation functions of the sub-samples. Fitting models to these correlation functions, calibrated by mock galaxy and dark matter catalogues, we find that the inferred distance scale is independent of environment, and consistent with the result of analyzing the combined sample. The shape of the baryon acoustic feature, and the accuracy of density-field reconstruction in the Zeldovich approximation, varies with environment. By up-weighting underdense regions and down-weighting overdense regions in their contribution to the full-sample correlation function, by up to 50%, we achieve a fractional improvement of a few per cent in the precision of baryon acoustic oscillation fits to the CMASS data and mock catalogues: the scatter in the preferred-scale fits to the ensemble of mocks improves from 1.45% to 1.34% (pre-reconstruction) and 1.03% to 1.00% (post-reconstruction). These results are consistent with the notion that the acoustic peak is sharper in underdense environments.
11 pages, 6 figures, accepted for publication in MNRAS
References in corpus (17)
- The Clustering of the SDSS DR7 Main Galaxy Sample I: A 4 per cent Distance Measure at z=0.15
- Planck 2018 results. I. Overview and the cosmological legacy of Planck
- Improving Cosmological Distance Measurements by Reconstruction of the Baryon Acoustic Peak
- Nonlinear Evolution of Baryon Acoustic Oscillations
- On the Robustness of the Acoustic Scale in the Low-Redshift Clustering of Matter
- Measurement of BAO correlations at with SDSS DR12 \lya-Forests
- The clustering of the SDSS-IV extended Baryon Oscillation Spectroscopic Survey DR14 quasar sample: First measurement of Baryon Acoustic Oscillations between redshift 0.8 and 2.2
- `Eppur Si Muove': On The Motion of the Acoustic Peak in the Correlation Function
- Non-linear structure formation and the acoustic scale
- Reconstructing Baryon Oscillations: A Lagrangian Theory Perspective
- Position-dependent power spectrum of the large-scale structure: a novel method to measure the squeezed-limit bispectrum
- A marked correlation function for constraining modified gravity models
- The Taipan Galaxy Survey: Scientific Goals and Observing Strategy
- Evidence for an environment-dependent shift in the baryon acoustic oscillation peak
- DEUS Full Observable ΛCDM Universe Simulation: the numerical challenge
- Removing BAO-peak Shifts with Local Density Transforms
- Improving baryon acoustic oscillation measurement with the combination of cosmic voids and galaxies
Cited by in corpus (4)
- Baryon acoustic oscillation methods for generic curvature: Application to the SDSS-III Baryon Oscillation Spectroscopic Survey
- Biased tracer reconstruction with halo mass information
- Angular Correlation Function Estimators Accounting for Contamination from Probabilistic Distance Measurements
- Does spatial flatness forbid the turnaround epoch of collapsing structures?